Abstract
AbstractRadiative cooling passively removes heat from objects via emission of thermal radiation to cold space. Suitable radiative cooling materials absorb infrared light while they avoid solar heating by either reflecting or transmitting solar radiation, depending on the application. Here, we demonstrate a reflective radiative cooler and a transparent radiative cooler solely based on cellulose derivatives manufactured via electrospinning and casting, respectively. By modifying the microstructure of cellulose materials, we control the solar light interaction from highly reflective (> 90%, porous structure) to highly transparent (≈ 90%, homogenous structure). Both cellulose materials show high thermal emissivity and minimal solar absorption, making them suitable for daytime radiative cooling. Used as coatings on silicon samples exposed to sun light at daytime, the reflective and transparent cellulose coolers could passively reduce sample temperatures by up to 15 °C and 5 °C, respectively.
Funder
Knut och Alice Wallenbergs Stiftelse
Swedish Government Strategic Research Area in Materials Science on Functional Materials at Linköping University
Swedish Foundation for Strategic Research and the Swedish Armed Forces Research and Technology program and the Swedish Research Council
Linköping University
Publisher
Springer Science and Business Media LLC
Cited by
52 articles.
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